Topological insulators as relatively new quantum materials with the topologically protected conducting Dirac surface state reveal fantastic electronic and photonic characteristics. The photonic behaviors of topological insulators are particularly significant for exploring their optical phenomena and functional devices. Here, we present the generation of Tamm plasmon polaritons (TPPs) in a topological insulator multilayer structure consisting of a Bi1.5Sb0.5Te1.8Se1.2 (BSTS) nanofilm and a one-dimensional photonic crystal (PC). The results illustrate that the TPP electric field can locally concentrate between the BSTS nanofilm and PC, contributing to the improved light-BSTS interaction with a 3-fold enhancement of light absorption. It is als...
We provide the first demonstration of plasmonic metamaterials made of a semiconducting material, Bi1...
International audienceUsing the finite-difference time-domain method and density functional theory, ...
Strong light-matter interaction enriches topological photonics by dressing light with matter, which ...
Topological insulators as relatively new quantum materials with the topologically protected conducti...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement As new...
We discuss the plasmonic properties of chalcogenide topological insulators arising from interband tr...
As a new class of nanomaterials, topological insulators with the Dirac surface conducting state and ...
The development of nanoplasmonic devices, such as plasmonic circuits and metamaterial superlenses in...
We present a theoretical analysis showing that layered topological insulators, for example, Bi2Se3 a...
Topological insulators are innovative materials with semiconducting bulk together with surface state...
Confinement of electromagnetic fields at the subwavelength scale via metamaterial paradigms is an es...
We study surface plasmon polaritons on a topological insulator-vacuum interface. When the time-rever...
Topological insulator (TI) crystals are bulk insulators with robust conducting surface states protec...
In this work we perform direct nano-imaging of nanostructured Bi1.5Sb0.5Te1.8Se1.2 (BSTS) topologica...
Subwavelength nanostructures in metallic platforms provide an efficient avenue to engineer light bel...
We provide the first demonstration of plasmonic metamaterials made of a semiconducting material, Bi1...
International audienceUsing the finite-difference time-domain method and density functional theory, ...
Strong light-matter interaction enriches topological photonics by dressing light with matter, which ...
Topological insulators as relatively new quantum materials with the topologically protected conducti...
© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement As new...
We discuss the plasmonic properties of chalcogenide topological insulators arising from interband tr...
As a new class of nanomaterials, topological insulators with the Dirac surface conducting state and ...
The development of nanoplasmonic devices, such as plasmonic circuits and metamaterial superlenses in...
We present a theoretical analysis showing that layered topological insulators, for example, Bi2Se3 a...
Topological insulators are innovative materials with semiconducting bulk together with surface state...
Confinement of electromagnetic fields at the subwavelength scale via metamaterial paradigms is an es...
We study surface plasmon polaritons on a topological insulator-vacuum interface. When the time-rever...
Topological insulator (TI) crystals are bulk insulators with robust conducting surface states protec...
In this work we perform direct nano-imaging of nanostructured Bi1.5Sb0.5Te1.8Se1.2 (BSTS) topologica...
Subwavelength nanostructures in metallic platforms provide an efficient avenue to engineer light bel...
We provide the first demonstration of plasmonic metamaterials made of a semiconducting material, Bi1...
International audienceUsing the finite-difference time-domain method and density functional theory, ...
Strong light-matter interaction enriches topological photonics by dressing light with matter, which ...